Facile Synthesis of Organic–Inorganic Hybrid Layered Rare‐Earth Hydroxide Nanocone for Multifunctional Drug Delivery System with Fluorescence Probe and Simultaneous Magnetic Resonance Imaging

Author:

Li Junyi12,Duan Junhong3,He Zhenhu3,Liao Yunjie3,Liu Xiaohe12ORCID,Rong Pengfei3,Chen Gen2,Wan Hao1,Huang Yumin4,Ma Renzhi5ORCID

Affiliation:

1. School of Chemical Engineering Zhengzhou University Zhengzhou 450001 P.R. China

2. School of Materials Science and Engineering Central South University Changsha Hunan 410083 P.R. China

3. Department of Radiology The Third Xiangya Hospital Central South University No. 172 Tongzipo Road Changsha Hunan 410013 China

4. Department of Hematology, the First Affiliated Hospital Zhengzhou University Zhengzhou 450001 P.R. China

5. International Center for Materials Nanoarchitectonics (WPI‐MANA) National Institute for Materials Science (NIMS) Namiki 1‐1 Tsukuba Ibaraki 305‐0044 Japan

Abstract

AbstractTo fulfill the emerging demand for drug therapy, the Y/Tb/Gd ternary layered rare‐earth hydroxide nanocone is developed as a new multifunctional delivery system for one of the most popular drugs, aspirin. Dodecyl sulfate intercalation is firstly used for the drug carrier which can form hollow nanocones and owns low binding energy, leading to the facile synthesis of organic–inorganic hybrid drug delivery system. The aspirin can be loaded rapidly (as short as 5 min) and released continuously (as long as 48 h) by YTG system through anion exchange, which will be favorable for sustained therapy. Meanwhile, the intercalated aspirin can enhance the green light luminescence of Tb3+ with peak position at 543 nm through energy transfer, which can be utilized as fluorescence probe to monitor the drug loading and release process. The magnetization of Gd3+ can also be improved by structural evolution induced by aspirin intercalation, which can be applied as magnetic resonance imaging contrast agent simultaneously. The current research provides a novel pathway for the invention of multifunctional drug delivery system, which hopefully is to be put into service in biomedical fields in the near future.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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